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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Problems analysis and new fabrication strategies of mediated electrochemical biosensors for wastewater toxicity assessment
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Problems analysis and new fabrication strategies of mediated electrochemical biosensors for wastewater toxicity assessment

机译:介导电化学生物传感器对废水毒性评估的问题分析及新制造策略

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摘要

Conventional mediated electrochemical biosensors for toxicity assessment were almost based on 'one-pot' principle, i.e., mediators and the under-test chemicals were mixed together in the same vessel. In this process, the electron mediator is assumed to be merely an electron acceptor and cannot react with under-test toxicants. Actually, some under-test pollutants (such as metal ions) could react with the electron mediators, thus affecting the detection accuracy and sensitivity of the sensors. It was also found that at least two other interference factors have been ignored in present 'one-pot' mediated electrochemical biosensor systems, i.e., (1) the electrochemical sensitivity of mediators to pH; and (2) the potential reactions between under-test chemicals and buffers and the consequent pH changes. In this study, the three ignored interference factors have been investigated systematically and demonstrated by significance tests. Moreover, a solving strategy, an isolation method, is proposed for fabrication of novel mediated electrochemical biosensor to avoid the interference factors existing at present mediated electrochemical biosensor. According to the testing results obtained from the isolation method, IC50 values of Cu2+, Cd2+, Zn2+, Fe3+, Ni2+ and Cr3+ were 21.3 mg/L, 3.7 mg/L, 26.7 mg/L, 4.4 mg/L and 10.7 mg/L, respectively. The detection results of four real water samples also suggested this method could be applied for the practical and complex samples.
机译:用于毒性评估的常规介导的电化学生物传感器几乎基于“单罐”原理,即介质,并且在同一个容器中混合在一起的介质。在该过程中,假设电子介体仅是电子受体,不能与试验后毒物反应。实际上,一些受试者污染物(例如金属离子)可以与电子介质反应,从而影响传感器的检测精度和灵敏度。还发现,目前的“单罐”介导的电化学生物传感器系统中至少忽略了至少两种其他干扰因子,即(1)介质对pH的电化学敏感性; (2)测试化学品和缓冲液之间的潜在反应以及随后的pH变化。在这项研究中,通过显着测试系统和证明了三种忽略的干扰因素。此外,提出了一种用于制备新型介导的电化学生物传感器的求解策略,以避免现有介导的电化学生物传感器存在的干扰因子。根据从分离方法获得的测试结果,Cu2 +,CD2 +,Zn2 +,Fe3 +,Ni2 +和Cr3 +的IC 50值为21.3mg / L,3.7mg / L,26.7mg / L,4.4mg / L和10.7 mg / L. , 分别。四种真正水样的检测结果也表明该方法可以应用于实际和复杂的样品。

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